mirror of
https://github.com/rust-lang/rust.git
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490 lines
18 KiB
Rust
490 lines
18 KiB
Rust
use crate::cmp;
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use crate::ffi::CStr;
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use crate::io;
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use crate::mem;
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use crate::ptr;
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use crate::sys::{os, stack_overflow};
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use crate::time::Duration;
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#[cfg(not(any(target_os = "l4re", target_os = "vxworks")))]
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pub const DEFAULT_MIN_STACK_SIZE: usize = 2 * 1024 * 1024;
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#[cfg(target_os = "l4re")]
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pub const DEFAULT_MIN_STACK_SIZE: usize = 1024 * 1024;
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#[cfg(target_os = "vxworks")]
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pub const DEFAULT_MIN_STACK_SIZE: usize = 256 * 1024;
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pub struct Thread {
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id: libc::pthread_t,
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}
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// Some platforms may have pthread_t as a pointer in which case we still want
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// a thread to be Send/Sync
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unsafe impl Send for Thread {}
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unsafe impl Sync for Thread {}
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// The pthread_attr_setstacksize symbol doesn't exist in the emscripten libc,
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// so we have to not link to it to satisfy emcc's ERROR_ON_UNDEFINED_SYMBOLS.
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#[cfg(not(target_os = "emscripten"))]
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unsafe fn pthread_attr_setstacksize(
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attr: *mut libc::pthread_attr_t,
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stack_size: libc::size_t,
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) -> libc::c_int {
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libc::pthread_attr_setstacksize(attr, stack_size)
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}
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#[cfg(target_os = "emscripten")]
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unsafe fn pthread_attr_setstacksize(
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_attr: *mut libc::pthread_attr_t,
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_stack_size: libc::size_t,
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) -> libc::c_int {
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panic!()
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}
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impl Thread {
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// unsafe: see thread::Builder::spawn_unchecked for safety requirements
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pub unsafe fn new(stack: usize, p: Box<dyn FnOnce()>) -> io::Result<Thread> {
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let p = Box::into_raw(box p);
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let mut native: libc::pthread_t = mem::zeroed();
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let mut attr: libc::pthread_attr_t = mem::zeroed();
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assert_eq!(libc::pthread_attr_init(&mut attr), 0);
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let stack_size = cmp::max(stack, min_stack_size(&attr));
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match pthread_attr_setstacksize(&mut attr, stack_size) {
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0 => {}
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n => {
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assert_eq!(n, libc::EINVAL);
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// EINVAL means |stack_size| is either too small or not a
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// multiple of the system page size. Because it's definitely
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// >= PTHREAD_STACK_MIN, it must be an alignment issue.
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// Round up to the nearest page and try again.
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let page_size = os::page_size();
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let stack_size =
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(stack_size + page_size - 1) & (-(page_size as isize - 1) as usize - 1);
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assert_eq!(libc::pthread_attr_setstacksize(&mut attr, stack_size), 0);
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}
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};
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let ret = libc::pthread_create(&mut native, &attr, thread_start, p as *mut _);
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// Note: if the thread creation fails and this assert fails, then p will
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// be leaked. However, an alternative design could cause double-free
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// which is clearly worse.
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assert_eq!(libc::pthread_attr_destroy(&mut attr), 0);
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return if ret != 0 {
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// The thread failed to start and as a result p was not consumed. Therefore, it is
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// safe to reconstruct the box so that it gets deallocated.
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drop(Box::from_raw(p));
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Err(io::Error::from_raw_os_error(ret))
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} else {
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Ok(Thread { id: native })
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};
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extern "C" fn thread_start(main: *mut libc::c_void) -> *mut libc::c_void {
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unsafe {
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// Next, set up our stack overflow handler which may get triggered if we run
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// out of stack.
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let _handler = stack_overflow::Handler::new();
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// Finally, let's run some code.
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Box::from_raw(main as *mut Box<dyn FnOnce()>)();
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}
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ptr::null_mut()
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}
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}
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pub fn yield_now() {
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let ret = unsafe { libc::sched_yield() };
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debug_assert_eq!(ret, 0);
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}
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#[cfg(any(target_os = "linux", target_os = "android"))]
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pub fn set_name(name: &CStr) {
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const PR_SET_NAME: libc::c_int = 15;
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// pthread wrapper only appeared in glibc 2.12, so we use syscall
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// directly.
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unsafe {
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libc::prctl(PR_SET_NAME, name.as_ptr() as libc::c_ulong, 0, 0, 0);
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}
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}
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#[cfg(any(target_os = "freebsd", target_os = "dragonfly", target_os = "openbsd"))]
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pub fn set_name(name: &CStr) {
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unsafe {
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libc::pthread_set_name_np(libc::pthread_self(), name.as_ptr());
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}
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}
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#[cfg(any(target_os = "macos", target_os = "ios"))]
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pub fn set_name(name: &CStr) {
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unsafe {
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libc::pthread_setname_np(name.as_ptr());
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}
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}
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#[cfg(target_os = "netbsd")]
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pub fn set_name(name: &CStr) {
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use crate::ffi::CString;
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let cname = CString::new(&b"%s"[..]).unwrap();
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unsafe {
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libc::pthread_setname_np(
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libc::pthread_self(),
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cname.as_ptr(),
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name.as_ptr() as *mut libc::c_void,
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);
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}
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}
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#[cfg(any(target_os = "solaris", target_os = "illumos"))]
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pub fn set_name(name: &CStr) {
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weak! {
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fn pthread_setname_np(
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libc::pthread_t, *const libc::c_char
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) -> libc::c_int
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}
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if let Some(f) = pthread_setname_np.get() {
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unsafe {
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f(libc::pthread_self(), name.as_ptr());
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}
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}
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}
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#[cfg(any(
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target_env = "newlib",
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target_os = "haiku",
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target_os = "l4re",
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target_os = "emscripten",
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target_os = "redox",
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target_os = "vxworks"
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))]
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pub fn set_name(_name: &CStr) {
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// Newlib, Haiku, Emscripten, and VxWorks have no way to set a thread name.
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}
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#[cfg(target_os = "fuchsia")]
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pub fn set_name(_name: &CStr) {
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// FIXME: determine whether Fuchsia has a way to set a thread name.
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}
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pub fn sleep(dur: Duration) {
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let mut secs = dur.as_secs();
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let mut nsecs = dur.subsec_nanos() as _;
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// If we're awoken with a signal then the return value will be -1 and
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// nanosleep will fill in `ts` with the remaining time.
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unsafe {
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while secs > 0 || nsecs > 0 {
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let mut ts = libc::timespec {
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tv_sec: cmp::min(libc::time_t::MAX as u64, secs) as libc::time_t,
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tv_nsec: nsecs,
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};
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secs -= ts.tv_sec as u64;
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if libc::nanosleep(&ts, &mut ts) == -1 {
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assert_eq!(os::errno(), libc::EINTR);
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secs += ts.tv_sec as u64;
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nsecs = ts.tv_nsec;
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} else {
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nsecs = 0;
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}
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}
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}
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}
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pub fn join(self) {
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unsafe {
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let ret = libc::pthread_join(self.id, ptr::null_mut());
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mem::forget(self);
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assert!(ret == 0, "failed to join thread: {}", io::Error::from_raw_os_error(ret));
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}
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}
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pub fn id(&self) -> libc::pthread_t {
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self.id
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}
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pub fn into_id(self) -> libc::pthread_t {
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let id = self.id;
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mem::forget(self);
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id
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}
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}
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impl Drop for Thread {
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fn drop(&mut self) {
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let ret = unsafe { libc::pthread_detach(self.id) };
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debug_assert_eq!(ret, 0);
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}
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}
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#[cfg(all(
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not(target_os = "linux"),
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not(target_os = "freebsd"),
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not(target_os = "macos"),
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not(all(target_os = "netbsd", not(target_vendor = "rumprun"))),
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not(target_os = "openbsd"),
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not(target_os = "solaris")
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))]
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#[cfg_attr(test, allow(dead_code))]
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pub mod guard {
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use crate::ops::Range;
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pub type Guard = Range<usize>;
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pub unsafe fn current() -> Option<Guard> {
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None
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}
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pub unsafe fn init() -> Option<Guard> {
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None
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}
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}
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#[cfg(any(
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target_os = "linux",
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target_os = "freebsd",
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target_os = "macos",
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all(target_os = "netbsd", not(target_vendor = "rumprun")),
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target_os = "openbsd",
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target_os = "solaris"
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))]
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#[cfg_attr(test, allow(dead_code))]
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pub mod guard {
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use libc::{mmap, mprotect};
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use libc::{MAP_ANON, MAP_FAILED, MAP_FIXED, MAP_PRIVATE, PROT_NONE, PROT_READ, PROT_WRITE};
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use crate::ops::Range;
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use crate::sync::atomic::{AtomicUsize, Ordering};
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use crate::sys::os;
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// This is initialized in init() and only read from after
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static PAGE_SIZE: AtomicUsize = AtomicUsize::new(0);
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pub type Guard = Range<usize>;
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#[cfg(target_os = "solaris")]
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unsafe fn get_stack_start() -> Option<*mut libc::c_void> {
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let mut current_stack: libc::stack_t = crate::mem::zeroed();
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assert_eq!(libc::stack_getbounds(&mut current_stack), 0);
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Some(current_stack.ss_sp)
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}
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#[cfg(target_os = "macos")]
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unsafe fn get_stack_start() -> Option<*mut libc::c_void> {
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let th = libc::pthread_self();
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let stackaddr =
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libc::pthread_get_stackaddr_np(th) as usize - libc::pthread_get_stacksize_np(th);
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Some(stackaddr as *mut libc::c_void)
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}
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#[cfg(target_os = "openbsd")]
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unsafe fn get_stack_start() -> Option<*mut libc::c_void> {
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let mut current_stack: libc::stack_t = crate::mem::zeroed();
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assert_eq!(libc::pthread_stackseg_np(libc::pthread_self(), &mut current_stack), 0);
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let stackaddr = if libc::pthread_main_np() == 1 {
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// main thread
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current_stack.ss_sp as usize - current_stack.ss_size + PAGE_SIZE.load(Ordering::Relaxed)
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} else {
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// new thread
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current_stack.ss_sp as usize - current_stack.ss_size
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};
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Some(stackaddr as *mut libc::c_void)
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}
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#[cfg(any(
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target_os = "android",
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target_os = "freebsd",
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target_os = "linux",
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target_os = "netbsd",
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target_os = "l4re"
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))]
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unsafe fn get_stack_start() -> Option<*mut libc::c_void> {
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let mut ret = None;
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let mut attr: libc::pthread_attr_t = crate::mem::zeroed();
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#[cfg(target_os = "freebsd")]
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assert_eq!(libc::pthread_attr_init(&mut attr), 0);
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#[cfg(target_os = "freebsd")]
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let e = libc::pthread_attr_get_np(libc::pthread_self(), &mut attr);
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#[cfg(not(target_os = "freebsd"))]
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let e = libc::pthread_getattr_np(libc::pthread_self(), &mut attr);
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if e == 0 {
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let mut stackaddr = crate::ptr::null_mut();
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let mut stacksize = 0;
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assert_eq!(libc::pthread_attr_getstack(&attr, &mut stackaddr, &mut stacksize), 0);
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ret = Some(stackaddr);
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}
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if e == 0 || cfg!(target_os = "freebsd") {
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assert_eq!(libc::pthread_attr_destroy(&mut attr), 0);
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}
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ret
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}
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// Precondition: PAGE_SIZE is initialized.
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unsafe fn get_stack_start_aligned() -> Option<*mut libc::c_void> {
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let page_size = PAGE_SIZE.load(Ordering::Relaxed);
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assert!(page_size != 0);
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let stackaddr = get_stack_start()?;
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// Ensure stackaddr is page aligned! A parent process might
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// have reset RLIMIT_STACK to be non-page aligned. The
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// pthread_attr_getstack() reports the usable stack area
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// stackaddr < stackaddr + stacksize, so if stackaddr is not
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// page-aligned, calculate the fix such that stackaddr <
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// new_page_aligned_stackaddr < stackaddr + stacksize
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let remainder = (stackaddr as usize) % page_size;
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Some(if remainder == 0 {
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stackaddr
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} else {
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((stackaddr as usize) + page_size - remainder) as *mut libc::c_void
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})
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}
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pub unsafe fn init() -> Option<Guard> {
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let page_size = os::page_size();
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PAGE_SIZE.store(page_size, Ordering::Relaxed);
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if cfg!(all(target_os = "linux", not(target_env = "musl"))) {
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// Linux doesn't allocate the whole stack right away, and
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// the kernel has its own stack-guard mechanism to fault
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// when growing too close to an existing mapping. If we map
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// our own guard, then the kernel starts enforcing a rather
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// large gap above that, rendering much of the possible
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// stack space useless. See #43052.
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//
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// Instead, we'll just note where we expect rlimit to start
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// faulting, so our handler can report "stack overflow", and
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// trust that the kernel's own stack guard will work.
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let stackaddr = get_stack_start_aligned()?;
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let stackaddr = stackaddr as usize;
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Some(stackaddr - page_size..stackaddr)
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} else if cfg!(all(target_os = "linux", target_env = "musl")) {
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// For the main thread, the musl's pthread_attr_getstack
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// returns the current stack size, rather than maximum size
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// it can eventually grow to. It cannot be used to determine
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// the position of kernel's stack guard.
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None
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} else {
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// Reallocate the last page of the stack.
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// This ensures SIGBUS will be raised on
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// stack overflow.
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// Systems which enforce strict PAX MPROTECT do not allow
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// to mprotect() a mapping with less restrictive permissions
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// than the initial mmap() used, so we mmap() here with
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// read/write permissions and only then mprotect() it to
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// no permissions at all. See issue #50313.
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let stackaddr = get_stack_start_aligned()?;
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let result = mmap(
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stackaddr,
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page_size,
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PROT_READ | PROT_WRITE,
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MAP_PRIVATE | MAP_ANON | MAP_FIXED,
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-1,
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0,
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);
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if result != stackaddr || result == MAP_FAILED {
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panic!("failed to allocate a guard page");
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}
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let result = mprotect(stackaddr, page_size, PROT_NONE);
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if result != 0 {
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panic!("failed to protect the guard page");
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}
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let guardaddr = stackaddr as usize;
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let offset = if cfg!(target_os = "freebsd") { 2 } else { 1 };
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Some(guardaddr..guardaddr + offset * page_size)
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}
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}
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#[cfg(any(target_os = "macos", target_os = "openbsd", target_os = "solaris"))]
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pub unsafe fn current() -> Option<Guard> {
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let stackaddr = get_stack_start()? as usize;
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Some(stackaddr - PAGE_SIZE.load(Ordering::Relaxed)..stackaddr)
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}
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#[cfg(any(
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target_os = "android",
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target_os = "freebsd",
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target_os = "linux",
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target_os = "netbsd",
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target_os = "l4re"
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))]
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pub unsafe fn current() -> Option<Guard> {
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let mut ret = None;
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let mut attr: libc::pthread_attr_t = crate::mem::zeroed();
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#[cfg(target_os = "freebsd")]
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assert_eq!(libc::pthread_attr_init(&mut attr), 0);
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#[cfg(target_os = "freebsd")]
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let e = libc::pthread_attr_get_np(libc::pthread_self(), &mut attr);
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#[cfg(not(target_os = "freebsd"))]
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let e = libc::pthread_getattr_np(libc::pthread_self(), &mut attr);
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if e == 0 {
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let mut guardsize = 0;
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assert_eq!(libc::pthread_attr_getguardsize(&attr, &mut guardsize), 0);
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if guardsize == 0 {
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if cfg!(all(target_os = "linux", target_env = "musl")) {
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// musl versions before 1.1.19 always reported guard
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// size obtained from pthread_attr_get_np as zero.
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// Use page size as a fallback.
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guardsize = PAGE_SIZE.load(Ordering::Relaxed);
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} else {
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panic!("there is no guard page");
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}
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}
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let mut stackaddr = crate::ptr::null_mut();
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let mut size = 0;
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assert_eq!(libc::pthread_attr_getstack(&attr, &mut stackaddr, &mut size), 0);
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let stackaddr = stackaddr as usize;
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ret = if cfg!(target_os = "freebsd") {
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// FIXME does freebsd really fault *below* the guard addr?
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let guardaddr = stackaddr - guardsize;
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Some(guardaddr - PAGE_SIZE.load(Ordering::Relaxed)..guardaddr)
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} else if cfg!(target_os = "netbsd") {
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Some(stackaddr - guardsize..stackaddr)
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} else if cfg!(all(target_os = "linux", target_env = "musl")) {
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Some(stackaddr - guardsize..stackaddr)
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} else if cfg!(all(target_os = "linux", target_env = "gnu")) {
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// glibc used to include the guard area within the stack, as noted in the BUGS
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// section of `man pthread_attr_getguardsize`. This has been corrected starting
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// with glibc 2.27, and in some distro backports, so the guard is now placed at the
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// end (below) the stack. There's no easy way for us to know which we have at
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// runtime, so we'll just match any fault in the range right above or below the
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// stack base to call that fault a stack overflow.
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Some(stackaddr - guardsize..stackaddr + guardsize)
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} else {
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Some(stackaddr..stackaddr + guardsize)
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};
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}
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if e == 0 || cfg!(target_os = "freebsd") {
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assert_eq!(libc::pthread_attr_destroy(&mut attr), 0);
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}
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ret
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}
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}
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// glibc >= 2.15 has a __pthread_get_minstack() function that returns
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// PTHREAD_STACK_MIN plus bytes needed for thread-local storage.
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// We need that information to avoid blowing up when a small stack
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// is created in an application with big thread-local storage requirements.
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// See #6233 for rationale and details.
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#[cfg(target_os = "linux")]
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#[allow(deprecated)]
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fn min_stack_size(attr: *const libc::pthread_attr_t) -> usize {
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weak!(fn __pthread_get_minstack(*const libc::pthread_attr_t) -> libc::size_t);
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match __pthread_get_minstack.get() {
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None => libc::PTHREAD_STACK_MIN,
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Some(f) => unsafe { f(attr) },
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|
}
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}
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// No point in looking up __pthread_get_minstack() on non-glibc
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|
// platforms.
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#[cfg(all(not(target_os = "linux"), not(target_os = "netbsd")))]
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|
fn min_stack_size(_: *const libc::pthread_attr_t) -> usize {
|
|
libc::PTHREAD_STACK_MIN
|
|
}
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|
|
|
#[cfg(target_os = "netbsd")]
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|
fn min_stack_size(_: *const libc::pthread_attr_t) -> usize {
|
|
2048 // just a guess
|
|
}
|